The Influence of Hydrophobic Structure on the Performance of Pt/Ceramic Hydrophobic Catalyst

This research adopted column porous ceramics (φ=5 mm) as the carriers, the hydrophobic carriers with three different kinds of nanostructured cerium oxide (CeO2) coating were fabricated and then catalysts which were used in hydrogen isotope separation were manufactured by convenient impregnation meth...

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Main Author: JIA Qingqing;HU Shilin;LIU Yaming
Format: Article
Language:zho
Published: Editorial Board of Journal of Isotopes 2021-02-01
Series:Journal of Isotopes
Subjects:
Online Access:http://www.tws.org.cn/CN/10.7538/tws.2021.34.01.0046
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spelling doaj-056cd312884a46fd9a03bb9de401b3752021-08-11T08:32:07ZzhoEditorial Board of Journal of IsotopesJournal of Isotopes1000-75121000-75122021-02-013414653The Influence of Hydrophobic Structure on the Performance of Pt/Ceramic Hydrophobic CatalystJIA Qingqing;HU Shilin;LIU Yaming 0China Institute of Atomic Energy, Beijing 102413, ChinaThis research adopted column porous ceramics (φ=5 mm) as the carriers, the hydrophobic carriers with three different kinds of nanostructured cerium oxide (CeO2) coating were fabricated and then catalysts which were used in hydrogen isotope separation were manufactured by convenient impregnation method, and the catalytic activity were tested through catalytic exchange reaction between hydrogen and saturated water vapor. The samples were characterized by XRD, SEM, EDX, XPS and CO adsorption to verify the influence of hydrophobic structure on the properties of catalyst. The results showed that the hydrophobic nanostructure made no influence on the pore structure of carriers and the metallic Pt content, while the influence of that on the Pt particle dispersion and the enrichment of Pt on surface layer were remarkable. Fluff hydrophobic structure with uniform distribution and serried coverage were more effective to improve the activity of catalyst. Although that structure lead to the decrease of Pt particle dispersion, it could make the Pt particles mostly deposit on the surface layer of the catalysts, which would make more Pt particle participate in the reaction in the same time and the increased catalytic activity could be obtained.http://www.tws.org.cn/CN/10.7538/tws.2021.34.01.0046hydrogen isotope separationhydrophobic inorganic carrierhydrophobic structure
collection DOAJ
language zho
format Article
sources DOAJ
author JIA Qingqing;HU Shilin;LIU Yaming
spellingShingle JIA Qingqing;HU Shilin;LIU Yaming
The Influence of Hydrophobic Structure on the Performance of Pt/Ceramic Hydrophobic Catalyst
Journal of Isotopes
hydrogen isotope separation
hydrophobic inorganic carrier
hydrophobic structure
author_facet JIA Qingqing;HU Shilin;LIU Yaming
author_sort JIA Qingqing;HU Shilin;LIU Yaming
title The Influence of Hydrophobic Structure on the Performance of Pt/Ceramic Hydrophobic Catalyst
title_short The Influence of Hydrophobic Structure on the Performance of Pt/Ceramic Hydrophobic Catalyst
title_full The Influence of Hydrophobic Structure on the Performance of Pt/Ceramic Hydrophobic Catalyst
title_fullStr The Influence of Hydrophobic Structure on the Performance of Pt/Ceramic Hydrophobic Catalyst
title_full_unstemmed The Influence of Hydrophobic Structure on the Performance of Pt/Ceramic Hydrophobic Catalyst
title_sort influence of hydrophobic structure on the performance of pt/ceramic hydrophobic catalyst
publisher Editorial Board of Journal of Isotopes
series Journal of Isotopes
issn 1000-7512
1000-7512
publishDate 2021-02-01
description This research adopted column porous ceramics (φ=5 mm) as the carriers, the hydrophobic carriers with three different kinds of nanostructured cerium oxide (CeO2) coating were fabricated and then catalysts which were used in hydrogen isotope separation were manufactured by convenient impregnation method, and the catalytic activity were tested through catalytic exchange reaction between hydrogen and saturated water vapor. The samples were characterized by XRD, SEM, EDX, XPS and CO adsorption to verify the influence of hydrophobic structure on the properties of catalyst. The results showed that the hydrophobic nanostructure made no influence on the pore structure of carriers and the metallic Pt content, while the influence of that on the Pt particle dispersion and the enrichment of Pt on surface layer were remarkable. Fluff hydrophobic structure with uniform distribution and serried coverage were more effective to improve the activity of catalyst. Although that structure lead to the decrease of Pt particle dispersion, it could make the Pt particles mostly deposit on the surface layer of the catalysts, which would make more Pt particle participate in the reaction in the same time and the increased catalytic activity could be obtained.
topic hydrogen isotope separation
hydrophobic inorganic carrier
hydrophobic structure
url http://www.tws.org.cn/CN/10.7538/tws.2021.34.01.0046
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